Q.Name two diseases whose spread can be controlled by the eradication of Aedes mosquitoes.
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🔒 Start your 14-day free trial to unlock the full solution →Concept understanding — Disease Transmission Modes
Let’s begin with something you already know. When someone in your family catches a cold, you instinctively avoid sharing their glass or sitting too close. That instinct is your brain recognising that something — a disease — can travel from one person to another. The how of that travel is what we call disease transmission modes.
In everyday language, a transmission mode is simply the route a germ takes to leave an infected person and reach a healthy one. Think of it as the germ’s travel plan. If the germ cannot travel, it cannot cause new infections. So understanding these routes is the first step in stopping outbreaks — whether it’s a common flu or a more serious epidemic.
The two big families: Direct and Indirect transmission
The NCERT textbook (Class XII, Biology, Chapter 8 — Human Health and Disease) divides transmission into two main categories. This is the standard classification you need to remember.
1. Direct Transmission — The germ moves straight from the infected person to the healthy person, with no intermediate object or living being involved. This can happen through:
- Physical contact: Touching, shaking hands, kissing, or sexual contact. Diseases like the common cold, scabies, and sexually transmitted infections (e.g., syphilis, HIV) spread this way.
- Droplet infection: When an infected person coughs, sneezes, or even talks, tiny droplets of saliva or mucus fly out. If you are within about a metre, you can inhale them. This is how influenza, the common cold, and COVID-19 spread.
- Direct exposure to infected tissue or blood: For example, a needle-stick injury in a hospital, or a mother passing an infection to her baby during pregnancy (congenital transmission).
Direct transmission is often the easiest to interrupt. Simple actions — like maintaining distance, wearing a mask, or washing hands — break the chain because the germ has no vehicle to ride on.
2. Indirect Transmission — Here, the germ needs a middleman to reach a new host. The middleman can be:
- A vehicle: This is a non-living thing that carries the germ. Common vehicles include:
- Air: Dust particles or droplet nuclei (the dried remnants of droplets) can float for hours. Measles and tuberculosis spread through air.
- Water: Contaminated drinking water spreads cholera, typhoid, and hepatitis A.
- Food: Improperly cooked or stored food can carry salmonella or E. coli.
- Fomites: Inanimate objects like door handles, towels, syringes, or surgical instruments. Hepatitis B can spread through contaminated needles.
- A vector: This is a living organism — usually an insect or animal — that carries the germ from one host to another. The vector itself is not infected (or is only incidentally infected). Classic examples:
- Mosquitoes: Female Anopheles mosquito transmits malaria; Aedes mosquito transmits dengue and chikungunya.
- Fleas: Rat fleas transmit the plague bacterium.
- Ticks: Spread Lyme disease.
The key difference between a vehicle and a vector is that a vehicle is non-living, while a vector is a living creature. Both are intermediate agents — the germ does not jump directly from person to person.
Why this matters beyond biology
For a commerce or humanities student, the importance of transmission modes is not just medical — it is social and economic. Think about it:
- If a disease spreads through water (like cholera), the solution is not a vaccine alone — it is clean water supply, sanitation infrastructure, and public awareness campaigns. That is a government policy and budget issue.
- If a disease spreads through vectors (like malaria), the solution involves mosquito nets, insecticide spraying, and urban planning to eliminate stagnant water. That is a logistics and community management problem.
- If a disease spreads through direct contact (like HIV), the solution involves education, behaviour change, and stigma reduction — which is a social science challenge.
In short, the mode of transmission determines the type of intervention needed. That is why public health officials always ask: “How is this disease spreading?” before they decide what to do.
A quick summary for revision …
Aedes mosquitoes are the vectors that transmit certain viral diseases in humans, so eliminating them breaks the transmission cycle. This links to the NCERT Class 12 Biology chapter on human health and disease. …
Dengue and Chikungunya — two viral diseases transmitted by Aedes mosquitoes — can be controlled by eradicating the vector.
Concept. Many human diseases are transmitted by insect vectors. The Aedes mosquito is the biological vector for certain viruses; controlling the vector population is a key strategy in preventing these vector-borne diseases.
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- KCET 2022Set A-11 markMCQQ.The most abundant type of WBC cells (A) Eosinophils (B) Basophils (C) Monocytes (D) Neutrophils
›Reveal solutionSolution
Recall the differential leucocyte count: neutrophils dominate at ~60-65%.
Step 1 — The five types of leucocytes and their share of the WBC total (NCERT, Body Fluids and Circulation):
WBC type Approximate % of total WBCs Group Neutrophils 60-65 % Granulocyte Lymphocytes 20-25 % Agranulocyte Monocytes 6-8 % Agranulocyte Eosinophils 2-3 % Granulocyte Basophils 0.5-1 % (rarest) Granulocyte Step 2 — Compare the four printed options. Of Eosinophils (2-3%), Basophils (<1%), Monocytes (6-8%) and Neutrophils (60-65%), the neutrophils are overwhelmingly the most abundant. (Lymphocytes, the second most abundant overall, are not even offered.) …
- KCET 2020Set A-11 markMCQQ.Match the following classes of Fungi (Column-I) with the examples (Column-II). Column-I Column-II(1) Phycomycetes (p) Penicillium(2) Ascomycetes (q) Alternaria(3) Basidiomycetes (r) Albugo(4) Deuteromycetes (s) Puccinia Choose the correct option : (A) $(1) - (p),(2) - (s),(3) - (r),(4) - (q)(B)(1) - (q),(2) - (p),(3) - (s),(4) - (r)(C)(1) - (r),(2) - (p),(3) - (q),(4) - (s)(D)(1) - (r),(2) - (p),(3) - (s),(4) - (q)$
›Reveal solutionSolution
Classify each example by its sexual spore (or the absence of one), then read off the matching.
Step 1 — Recall the basis of fungal classification.
Fungi are grouped mainly by morphology of the mycelium, mode of spore formation, and the fruiting body:
Class Mycelium Asexual spores Sexual spores Common names Phycomycetes aseptate, coenocytic zoospores / aplanospores oospores/zygospores algal fungi Ascomycetes septate, branched conidia (on conidiophores) ascospores in an ascus sac fungi Basidiomycetes septate none typically (vegetative by fragmentation) basidiospores on a basidium club fungi Deuteromycetes septate conidia only none known fungi imperfecti Step 2 — Place each example.
- (r) Albugo — the white-rust parasite of crucifers (mustard). Aseptate, coenocytic mycelium, an obligate parasite on mustard ⇒ Phycomycetes (1).
- (p) Penicillium — the blue-green mould that gave us penicillin; forms conidia and sexually ascospores ⇒ Ascomycetes (2).
- (s) Puccinia — the rust fungus (e.g. black rust of wheat). Rusts and smuts are club fungi ⇒ Basidiomycetes (3). …
- KCET 2019Set A-11 markMCQQ.Identify the odd one among the following disorders : (A) Sickle-cell Anaemia (B) Thalassemia (C) Haemophilia (D) Phenyl Ketonuria
›Reveal solutionSolution
Three of the four are autosomal recessive disorders; haemophilia alone is X-linked (sex-linked) recessive, so it is the odd one.
Step 1 — Classify each disorder by its mode of inheritance
Disorder Chromosome Mode of inheritance (A) Sickle-cell anaemia Autosome (chr 11, β-globin gene, Glu→Val at position 6) Autosomal recessive (co-dominant at the molecular level) (B) Thalassemia Autosome (chr 16 for α, chr 11 for β) Autosomal recessive (C) Haemophilia X chromosome X-linked (sex-linked) recessive (D) Phenylketonuria Autosome (chr 12, phenylalanine hydroxylase) Autosomal recessive Step 2 — Find the discriminating property
All four are Mendelian, single-gene, recessive disorders — so "recessive" does not separate them. The property that separates exactly one of them is the chromosome carrying the gene:
- Sickle-cell anaemia, thalassemia and phenylketonuria are all autosomal, so they affect males and females equally. …
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